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A New Approach to Electromagnetic Blood Flow Determination by Means of Catheter in an External Magnetic Field

机译:利用导管在外磁场中测定电磁血流量的新方法

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摘要

Maximal reduction in transverse catheter dimension has been achieved for the purpose of creating an intravascular electromagnetic flow sensor capable of percutaneous introduction into the vascular system. The electrodes are mounted on a flexible frame which collapses as it passes through a small branch blood vessel and expands to span the diameter of the main vascular trunk when entering it. Unlike the catheter flow sensors developed previously, which are velometers, i.e., sensors of fluid velocity, the present one is capable of measuring the volume rate of flow in branch blood vessels as well as in the major sections of the vascular tree. The magnetic field is provided by a large air core electromagnet placed externally to the animal or patient. A special circuit utilizing two electrodes and three leads permits reduction of the unwanted quadrature signal to zero. A standard sine wave electromagnetic flow meter channel designed for use with conventional electromagnetic flow transducers is adequate for flow measurements as well as for power supply to the large magnet. Illustrations of the performance of the apparatus in vitro and in vivo are presented.
机译:为了创建能够经皮引入血管系统的血管内电磁流量传感器,已经实现了横向导管尺寸的最大减小。电极安装在柔性框架上,该框架在穿过小分支血管时会折叠,并在进入主血管时直径扩大以覆盖主血管的直径。不同于先前开发的导管流量计,即测速仪,即流体速度传感器,本发明能够测量分支血管以及血管树的主要部分中的体积流量。磁场由放置在动物或患者外部的大型空心电磁体提供。利用两个电极和三个引线的特殊电路可以将不需要的正交信号减小到零。设计用于常规电磁流量传感器的标准正弦波电磁流量计通道足以进行流量测量以及为大型磁体供电。给出了该装置在体外和体内性能的图示。

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